Gene regulatory networks underpin stress response pathways in plants. However, parsing these networks to prioritize key genes underlying a particular trait is challenging. Here, we have built the Gene Regulation and Association Network (GRAiN) of rice (Oryza sativa). GRAiN is an interactive query-based web-platform that allows users to study functional relationships between transcription factors (TFs) and genetic modules underlying abiotic-stress responses. We built GRAiN by applying a combination of different network inference algorithms to publicly available gene expression data. We propose a supervised machine learning framework that complements GRAiN in prioritizing genes that regulate stress signal transduction and modulate gene expres...
Plants respond to abiotic stressors through a suite of strategies including differential regulation ...
Rice (Oryza sativa L.) is more sensitive to drought stress than other cereals. Particularly during r...
Background: Plant roots are important organs to uptake soil water and nutrients, perceiving and tran...
BackgroundDrought is a severe environmental stress. It is estimated that about 50% of the world rice...
BackgroundDrought is a severe environmental stress. It is estimated that about 50% of the world rice...
<div><p>Understanding the molecular mechanisms that underlie plant responses to drought stress is ch...
The impacts of drought on plant growth and development limit cereal crop production worldwide. Rice ...
Abstract Background Plant stress responses and mechanisms determining tolerance are controlled by di...
Drought is a major constraint affecting rice production and causing yield reduction of up to 60% in ...
There is a growing need to engineer an increased yield in food crops coupled with greater resistance...
Abiotic and biotic stress responses are traditionally thought to be regulated by discrete signaling ...
© 2018, The Author(s). Environmental stress is a major driver of ecological community dynamics and a...
Increasing vulnerability of plants to a variety of stresses such as drought, salt and extreme temper...
<p> </p> <p> </p> <p> </p> <p> </p> <p> </p> <p> </p> <p> </p> <p> Abiotic stresses are the primary ...
Identifying the connections between molecular and physiological processes underlying the diversity o...
Plants respond to abiotic stressors through a suite of strategies including differential regulation ...
Rice (Oryza sativa L.) is more sensitive to drought stress than other cereals. Particularly during r...
Background: Plant roots are important organs to uptake soil water and nutrients, perceiving and tran...
BackgroundDrought is a severe environmental stress. It is estimated that about 50% of the world rice...
BackgroundDrought is a severe environmental stress. It is estimated that about 50% of the world rice...
<div><p>Understanding the molecular mechanisms that underlie plant responses to drought stress is ch...
The impacts of drought on plant growth and development limit cereal crop production worldwide. Rice ...
Abstract Background Plant stress responses and mechanisms determining tolerance are controlled by di...
Drought is a major constraint affecting rice production and causing yield reduction of up to 60% in ...
There is a growing need to engineer an increased yield in food crops coupled with greater resistance...
Abiotic and biotic stress responses are traditionally thought to be regulated by discrete signaling ...
© 2018, The Author(s). Environmental stress is a major driver of ecological community dynamics and a...
Increasing vulnerability of plants to a variety of stresses such as drought, salt and extreme temper...
<p> </p> <p> </p> <p> </p> <p> </p> <p> </p> <p> </p> <p> </p> <p> Abiotic stresses are the primary ...
Identifying the connections between molecular and physiological processes underlying the diversity o...
Plants respond to abiotic stressors through a suite of strategies including differential regulation ...
Rice (Oryza sativa L.) is more sensitive to drought stress than other cereals. Particularly during r...
Background: Plant roots are important organs to uptake soil water and nutrients, perceiving and tran...